logo
Добро пожаловать в Wuhan Star Optic Technology Co., Ltd
86-027-87002137
Found 67 products for "

thin film optics

"
Качественный Металлическое диэлектрическое гибридное покрытие широкополосного покрытия 400-700нм Лучеделителя не поляризуя Фабрика

Металлическое диэлектрическое гибридное покрытие широкополосного покрытия 400-700нм Лучеделителя не поляризуя

Cube Non-Polarizing Beamsplitter Coating, Low polarization dependence Thin Film Optical Coating Overview: Non-polarizing cube beamsplitter coating basically is a matellic-dielectric hybrid thin film optical coating both transmits and relfects incoming beams at 45%, allows the transmission and reflection of S and P polarization states to be within 6% of each other. It is less sensitive to changes in angle of incidence and has moderate absorption but minimal polarization

Качественный Специализированная цилиндрическая стеклянная линза для работы в ультрафиолетовом диапазоне в медицинской промышленности Фабрика

Специализированная цилиндрическая стеклянная линза для работы в ультрафиолетовом диапазоне в медицинской промышленности

Product Description: The Optical Cylinder Lens is a high-quality product made from Optical Glass, known for its exceptional clarity and precision. This type of lens is specifically designed for one-dimensional beam shaping applications, making it a valuable tool in various industries such as laser technology, imaging systems, and optical instrumentation. One of the key features of this lens is its ability to efficiently shape and manipulate the path of light in a single

Качественный Выпуклая сферическая линза N-BK7 Фабрика

Выпуклая сферическая линза N-BK7

Plano Convex (PCX) Spherical Lens, N-BK7, Focusing Light Overview: Plano-Convex (PCX) Lenses have a positive focal length, can focus a collimated beam or collimate light from a point source, making them ideal for collecting and focusing light in imaging applications. Star Optic provides Plano-Convex Lenses fabricated from RoHS-compliant N-BK7, UV fused silica, N-SF11, CaF2, Si, Ge, ZnSe and Sapphire. Our Plano-Convex Lenses are also used in applications involving emitters,

Качественный Свести к минимуму сферическую аберрацию с антиотражающим покрытием объектива мениска Фабрика

Свести к минимуму сферическую аберрацию с антиотражающим покрытием объектива мениска

Negative Meniscus Lens, N-BK7, Minimize Spherical Aberration Lens Overview: Negative meniscus (convex-concave) lens is designed to minimize spherical aberration in optical systems. When used in combination with another lens, a negative meniscus lens will increase the focal length and decrease the numerical aperture (NA) of the system without introducing significant spherical aberration. When used to diverge light, the convex surface should face the beam to minimize spherical

Качественный Создание линий плоской цилиндрической выпуклой линзы со стандартными креплениями линзы Фабрика

Создание линий плоской цилиндрической выпуклой линзы со стандартными креплениями линзы

Round Plano-Convex Cylindrical Lens, Circular, UV Fused Silica Overview: Cylindrical lenses are used to create lines or for beam expansion in one direction. Their optical properties and aberrations correspond to those of spherical optics. Star Optic offers plano-convex cylindrical lenses in rectangular, square, and round form. Rectangular and square cylindrical lenses possess a clearly defined optical axis. Round cylindrical lenses are a bit more difficult to adjust, but can

Качественный Прозрачная сферическая стеклянная линза ZnSe Отрицательная менисковая линза Фабрика

Прозрачная сферическая стеклянная линза ZnSe Отрицательная менисковая линза

Negative Meniscus Lens, UV Fused Silica, Minimize Spherical Aberration Lens Overview: Negative meniscus (convex-concave) lens is designed to minimize spherical aberration in optical systems. When used in combination with another lens, a negative meniscus lens will increase the focal length and decrease the numerical aperture (NA) of the system without introducing significant spherical aberration. When used to diverge light, the convex surface should face the beam to minimize

Качественный Плавленый кремнезем 546.1нм плоской сферической стеклянной линзы УЛЬТРАФИОЛЕТОВЫЙ в излучателях Фабрика

Плавленый кремнезем 546.1нм плоской сферической стеклянной линзы УЛЬТРАФИОЛЕТОВЫЙ в излучателях

Plano Convex (PCX) Spherical Lens, UV Fused Silica, Focusing Light Overview: Plano-Convex (PCX) Lenses have a positive focal length, can focus a collimated beam or collimate light from a point source, making them ideal for collecting and focusing light in imaging applications. Star Optic provides Plano-Convex Lenses fabricated from RoHS-compliant N-BK7, UV fused silica, N-SF11, CaF2, Si, Ge, ZnSe and Sapphire. Our Plano-Convex Lenses are also used in applications involving

Качественный N-SF11 Вогнутая плоская сферическая линза Рассеивающий коллимированный пучок Фабрика

N-SF11 Вогнутая плоская сферическая линза Рассеивающий коллимированный пучок

Plano Concave (PCV) Spherical Lens, N-BK7, Diverging Collimated Beam Overview: Plano-concave (PCV) lens has one flat and one inward curved surface. PCV lenses have a negative focal length, diverging a collimated beam from a virtual focus and are commonly used for image reduction or to spread light. Star Optic provides plano-concave lenses fabricated from N-BK7, N-SF11, UV-fused silica, calcium fluoride, zinc selenide and etc. General Specifications Of N-BK7 Plano Concave (PCV

Качественный Сапфир Би выпуклая линза 25.4мм антирефлексивные покрытия конечной сопряженной линзы Фабрика

Сапфир Би выпуклая линза 25.4мм антирефлексивные покрытия конечной сопряженной линзы

Double Convex (Bi-Convex) Spherical Lens, N-BK7, Finite Imaging Lens Overview: Double-Convex (DCX) Lens, also referred to as bi-convex lens, has two positive, symmetrical faces with equal radii on both sides. These lenses are generally recommended for finite imaging applications. Bi-convex lenses are most suitable where the object and image are on opposite sides of the lens and the ratio of the image and object distances (conjugate ratio) is between 0.2 and 5. Star Optic